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1)  nano-sized Mn-Zn ferrite powders
纳米锰锌铁氧体
1.
Based on the precursor of ZnSO 4 ·7H 2 O,FeCI 3 ·6H 2 O and MnSO 4 ,nano-sized Mn-Zn ferrite powders were synthesized by the catalysis of Fe 2+ in boiling circumfluence.
以ZnSO4·7H2O,FeCl3·6H2O和MnSO4为原料,采用液相沸腾回流法,成功地制备出了纳米锰锌铁氧体
2)  MnZn ferrite nanocrystal
锰锌铁氧体纳米粉体
1.
The MnZn ferrite nanocrystal has been successfully synthesized by a simple synthesis, co-precipitation phase transformation.
本文采用的软磁锰锌铁氧体纳米粉体,是用一种简单的方法,即共沉淀沸腾回流相转化法制备的。
3)  ZnMn ferrite nanoscale particles
锌锰铁氧体纳米晶
4)  nanocrystal MnZn ferrite particle
锰锌铁氧体纳米晶
1.
Single phase aggregate-free nanocrystal MnZn ferrite particles with a size of 10~20nm were perapared via hydrothermal method by additive, which were characterized by TEM and XRD.
通过加入添加剂经水热合成法制备了单相无硬团聚的 10~ 2 0nm锰锌铁氧体纳米晶 ,运用TEM ,XRD等进行了表征。
5)  manganese copper zinc nanocrystalline ferrite
锰铜锌纳米晶铁氧体
6)  manganese zinc ferrite
锰锌铁氧体
1.
On defects structure of manganese zinc ferrite nanocrystallines by positron annihilation lifetime spectroscopy
用正电子湮没寿命谱研究锰锌铁氧体纳米晶的缺陷结构
2.
The test results show that the preparation of magnetized paper fiber filled by manganese zinc ferrite is feasible at relatively low temperature.
实验结果证明在相对低温的情况下,制备以锰锌铁氧体为填充物的磁性纸用纤维是可行的。
3.
Coagulation and sedimentation method were used for treating an effluent of a manganese zinc ferrite production factory based on the bench scale experiments, in which chemical and physical conditions for treatment were identified.
锰锌铁氧体生产废水采用混凝沉淀法处理 ,悬浮物去除率可达 99。
补充资料:锰-锌铁氧体
分子式:Mn-Zn
CAS号:

性质:软磁铁氧体的主要品种之一。具有尖晶石型结构。密度5.1g/cm3,维氏硬度600~800。初始磁导率ua1000~5000。磁导率与品质因素的乘积150000(100kHz)。居里点134~200℃。饱和磁感应强度0.3~0.5T。矫顽力8~36A/m。电阻率20~1000Ω·cm。主要原料为铁、锰、锌的氧化物或盐类。一般用电子陶瓷工艺制造。如采用控制气氛烧结或热压烧结等新工艺,可获得性能优良的产品。一般在1kHz~10MHz频率范围内使用。可用于制作电感器、脉冲变压器、滤波器的磁芯、介质天然及磁头等。

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